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A stabilized non-ordinary state-based peridynamics for the nonlocal ductile material failure analysis in metal machining process

机译:用于金属加工过程中非局部延性材料失效分析的稳定的基于非常规状态的周边动力学

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This paper presents a non-ordinary state-based peridynamic formulation that can be applied to the metal machining analysis. The new formulation is first derived by utilizing the technique of mixed localonlocal gradient approximations to enforce the contact and essential boundary conditions associated in modeling the machining process. A stabilized peridynamic force vector state is then introduced to suppress the zero-energy modes which show up as the result of particle integration of the state-based peridynamic formulation. The introduction of the stabilized peridynamic force vector state eliminates the need of an estimation of the force-spring-like bond forces and leads to a consistent computation of peridynamic equations of motion using a general constitutive model. Finally, a continuum damage model is incorporated into the present state-based peridynamic formulation together with a decomposed stabilized approximate deformation gradient based on a neighbor particle reconstruction scheme to model the ductile metal failure and to maintain a well-defined geometric mapping in finite deformation. Three numerical benchmarks are analyzed to demonstrate the effectiveness and regularization of the present method for simulating the metal machining process. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于非常规状态的周边动力学公式,该公式可以应用于金属加工分析。首先通过利用混合局部/非局部梯度逼近技术来加强与加工过程相关的接触和基本边界条件,从而得出新的公式。然后引入稳定的蠕动力矢量状态,以抑制由于基于状态的蠕动公式的粒子积分而显示的零能量模式。稳定的绕动力矢量状态的引入消除了对类似力弹簧结合力的估计的需要,并导致了使用通用本构模型对绕动运动方程的一致计算。最后,将连续损伤模型与基于邻居粒子重建方案的分解的稳定化近似变形梯度一起,结合到当前的基于状态的动力学模型中,以对可延展的金属破坏建模并在有限变形中保持定义明确的几何映射。分析了三个数值基准,以证明本方法模拟金属加工过程的有效性和规则化。 (C)2015 Elsevier B.V.保留所有权利。

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